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Esin, E. V.

Publications and source records attributed to Esin, E. V..

3 recordsLinked to original sources

Out of the cradle: expansion from the natal ecosystem erodes morphological specificity in endemic Kamchatkan charrs (genus Salvelinus)

The contribution of postglacial adaptive radiations to maintaining regional biodiversity of freshwater fish remains debatable. To uncover whether such radiations can lead to the emergence of new populations in neighbouring ecosystems, we have reconstructed the evolutionary history of the endemic Salvelinus malma assemblage from Lake Kronotskoe in Kamchatka. We traced the dispersal of endemic evolutionary lineages from the lake into neighbouring basins and quantified the morphological divergence between the lacustrine populations and their derivatives. To this end, we first examined the phylogeny, genetic differentiation, current hybridization and historical gene flow of eleven charr groups using genome-wide SNPs, followed by a charr morphometric comparison. We found that the Lake Kronotskoe lineages of the predatory and littoral benthivorous charrs invaded small peripheral waterbodies via temporary riverbed interconnections during the Holocene and continue to migrate downstream from the landlocked ecosystem, hybridizing with the anadromous S. malma. These dispersal processes have resulted in three new isolated populations and one hybrid anadromous population. The evolution of morphotypes in derived populations occurred independently of their phylogenetic history, resulting in the generalized morphology that is characteristic of pelagic or riverine dwellers. These findings show that the postglacial expansion of adaptive morphs from the cradle ecosystem bolsters regional diversity, and that migrants quickly lose ancestral adaptive traits, forming new morphotypes in response to changing environmental pressures.

evolutionary biology↗

Differences in energy storage in sympatric salmonid morphs with contrasting lifestyles

Although physiology ensures homeostasis and fitness in a particular environment, and ecological shifts cannot be realized without physiological changes, metabolic transformations during animal adaptive radiations still remain unexplored. We present a study of energy reserve storage in the salmonid assemblage inhabiting a cold-water Lake Kronotskoe. This assemblage diversified from Salvelinus malma and includes eight distinct ecomorphs with contrasting lifestyles and trophic specializations. We hypothesized that ecomorphs differ in energy storage and expenditure, and that their metabolic phenotypes should be among the primary targets of natural selection. To test this hypothesis, we compared the stored amount and ratio of carbohydrates, lipids, circulating peptides that supply the citric acid cycle, as well as proxy indicators of metabolic rate, the blood levels of plasma proteins (including albumin) and hemoglobin. Among ecomorphs, numerous significant differences in physiological parameters were found, closely related to the composition of food, the depth of habitat, and determined by internal factors, probably genetics. Each ecomorph has a specific metabolic phenotype corresponding to its tropho-ecological specialization and lifestyle. Metabolically advanced predators accumulate lipids; littoral insectivorous morphs grow slower and accumulate glycogen; amphipod feeders do not accumulate spare substances; the deepwater consumer of silt benthos differs in the most divergent physiological characteristics. We assume a specific selection on endocrine regulators of energy metabolism during the adaptive radiation of the assemblage, among which the most plausible candidates are thyroid hormones and leptin.

evolutionary biology↗

Phylogenomic analysis of the Lake Kronotskoe species flock of Dolly Varden charr reveals genetic signatures of sympatric radiation

Recent adaptive radiations provide evolutionary case studies, which provide the context to parse the relationship between genomic variation and the origins of distinct phenotypes. Sympatric radiations of the charr complex (genus Salvelinus) present a trove for phylogenetics as charrs have repeatedly diversified into multiple morphs with distinct feeding specializations. However, species flocks normally comprise only two to three lineages. Dolly Varden charr inhabiting Lake Kronotske represent the most extensive radiation described for the charr genus, containing at least seven lineages, each with defining morphological and ecological traits. Here, we perform the first genome-wide analysis of this species flock to parse the foundations of adaptive change. Our data support distinct, reproductively isolated lineages with little evidence of hybridization. We also find that specific selection on thyroid signaling and craniofacial genes forms a genomic basis for the radiation. Thyroid hormone is further implicated in subsequent lineage partitioning events. These results delineate a clear genetic basis for the diversification of specialized lineages, and highlight the role of developmental mechanisms in shaping the forms generated during adaptive radiation. Significance StatementDolly Varden Charr (Salvelinus malma) radiation in Lake Kronotskoe provides a unique case study of the genetics of adaptation and morphological evolution. We provide first genomic and experimental analyses of this radiation and show that major axes of change may be shaped by developmental constraints.

evolutionary biology↗